LEADER 03177nam 2200733z- 450 001 9910585941703321 005 20231214133635.0 035 $a(CKB)5600000000483065 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/91218 035 $a(EXLCZ)995600000000483065 100 $a20202208d2022 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aSuperconducting and Graphene-based Devices 210 $aBasel$cMDPI - Multidisciplinary Digital Publishing Institute$d2022 215 $a1 electronic resource (120 p.) 311 $a3-0365-4761-4 311 $a3-0365-4762-2 330 $aThis Special Issue reprint aims to collect new or improved ideas to exploit superconducting materials, as well as graphene, towards achieving innovative devices, either at a small scale, as well as at a large scale. Several potential applications of graphene are enhanced by the possibility to modify its surface to introduce a non-zero bandgap, to tune adhesion and/or hydrophobicity/hydrophilicity, etc. These surface properties are crucial to the realization of graphene-based devices. Papers demonstrating graphene and/or superconducting devices, device processing, characterization, and applications, are particularly welcomed. Topics in this Special Issue include, but are not limited to: Graphene devices Graphene based heterostructures Superconducting interfaces Superconducting devices Electronic, optical, photonic and magnetic properties Surface and interfacial characterization techniques Device integration and fabrication 606 $aTechnology: general issues$2bicssc 610 $aGFET 610 $aRF 610 $aaccess region 610 $asuperconducting devices 610 $aphotodetectors 610 $ananostructured materials 610 $ananostructured and microstructured superconductors 610 $ahigh temperature superconductors 610 $abolometers 610 $aquantum electronics 610 $anoise spectroscopy 610 $agranular aluminum oxide 610 $asuperconducting nanowires 610 $acurrent-resistance effects 610 $airon-based superconductors 610 $ananowires 610 $asingle-photon detectors 610 $asuperconductivity 610 $atransport properties 610 $aenergy gap 610 $asuperconducting order parameter 610 $aproximity effect 610 $anano-junction 610 $aAndreev reflection 610 $achemical 610 $avapor deposition 610 $agraphene oxide 610 $atransition-metal dichalcogenides 610 $aWS2 610 $aperfect graphene (p-Gr) 610 $adefective graphene (d-Gr) 610 $aGr/Si slab 610 $adiffusion barrier 610 $aCI-NEB calculation 615 7$aTechnology: general issues 700 $aGiubileo$b Filippo$4edt$01324166 702 $aGiubileo$b Filippo$4oth 906 $aBOOK 912 $a9910585941703321 996 $aSuperconducting and Graphene-based Devices$93035982 997 $aUNINA